Environment monitoring device based on artificial intelligence Internet of Things
By using an environmental monitoring device based on artificial intelligence of things (AIIoT) and utilizing rotating components and drive mechanisms, multi-view monitoring of fire detectors and cameras is achieved, solving the problem that conventional equipment cannot observe multiple perspectives in a timely manner, and realizing real-time monitoring and emergency response from multiple perspectives.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- INSPUR QILU SOFTWARE IND
- Filing Date
- 2025-05-23
- Publication Date
- 2026-04-24
AI Technical Summary
Conventional environmental monitoring equipment, due to its fixed viewing angle, cannot observe multiple perspectives in a timely manner, thus failing to take timely emergency measures.
Design an environmental monitoring device based on artificial intelligence of things (AIIoT), which employs a rotating component and a rotating drive mechanism to allow fire detectors and internet surveillance cameras to adjust their monitoring direction, and enables the installation and movement of various monitoring devices through a bidirectional motor and a geared motor.
It enables real-time monitoring and emergency response from multiple perspectives, ensuring timely fire alarms and improving the comprehensiveness and timeliness of environmental monitoring.
Smart Images

Figure CN224163997U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of environmental monitoring technology, specifically to an environmental monitoring device based on artificial intelligence of things (AIIoT). Background Technology
[0002] Environmental monitoring equipment is used to monitor and manage environmental quality in real time to ensure human life, work, and ecological health. These devices can be used in various scenarios, including industry, agriculture, urban infrastructure, and natural ecosystems. Equipped with cameras and sensors, they can be used to observe animal activity and ecological changes. Environmental monitoring equipment plays a crucial role in modern environmental management, helping us to monitor the quality of air, water, and soil in real time, promptly identify problems, and take appropriate measures to maintain ecological balance and public health. At the same time, the data from these devices provides strong support for policy-making and environmental protection.
[0003] Conventional environmental monitoring equipment involves directly installing detectors at designated locations. Due to the fixed viewing angle, uncertainties exist, which may prevent timely observation of multiple perspectives and environmental monitoring, thus hindering timely emergency response. Therefore, designing fire early warning devices that can adjust the monitoring direction and install multiple monitoring devices to achieve comprehensive and multi-factor monitoring is of great significance to the current environmental monitoring industry. Utility Model Content
[0004] The technical objective of this invention is to provide an environmental monitoring device based on artificial intelligence of things (AI) and the Internet of Things (IoT). This device has the advantages of adjusting the monitoring direction and installing multiple monitoring devices, thus solving the problem that conventional environmental monitoring devices can observe multiple perspectives and monitor the environment in a timely manner, which may lead to a failure to take timely emergency measures.
[0005] The technical solution adopted by this utility model to solve its technical problem is:
[0006] An environmental monitoring device based on artificial intelligence of things (AIIoT) includes a mounting frame, a rotating component fixed to the bottom of the mounting frame, a fire detector mounted on the rotating component, and an internet surveillance camera. The rotating component is connected to a rotating drive mechanism.
[0007] The bottom of the mounting bracket is equipped with a protective top plate and mounting side plates. The two mounting side plates are vertically fixed on both sides of the bottom of the protective top plate.
[0008] The rotation drive mechanism includes a transmission half gear, a transmission gear meshing with the transmission half gear, and a bidirectional motor. The bidirectional motor is fixedly installed at the bottom of the protective top plate, and its two drive shafts are respectively connected to two transmission gears. The two transmission gears are rotatably installed on the inner sides of two mounting side plates. One half of the transmission half gear is a toothed arc surface, and the other half is a circular arc surface. One end of the toothed arc surface meshes with the transmission gear and is rotatably fixed on the inner sides of the two mounting side plates, while the other end of the circular arc surface is fixed to the rotation assembly.
[0009] The bottom of the rotating assembly is provided with a slide rail, and the fire detector is mounted on the rotating assembly via a slide block.
[0010] The mounting bracket is installed at the fire alarm location and can be mounted on the ceiling. The rotation drive mechanism under the protective top plate is used to adjust the position of the rotating component so that it can rotate, thereby driving the fire detectors installed inside the slide rail to move. Multiple fire detectors can be installed inside the slide rail as needed. The internet monitoring camera installed on the outside of the track can monitor the fire scene in real time and detect the fire scene.
[0011] Furthermore, the fire detector includes a smoke detector and a temperature detector, which are respectively mounted on a slide rail via sliding bases.
[0012] Furthermore, the rotating assembly is located below the bidirectional motor, and the slide rail is arranged along the length of the bidirectional motor;
[0013] The internet surveillance cameras are installed on both sides of the slide rail.
[0014] Furthermore, the slide block is a sliding plate, including an upper plate and a lower plate, with the fire detector fixed to the bottom of the lower plate; the slide rail is a double-groove slide rail that cooperates with the sliding plate.
[0015] Fixed springs are fixedly installed on both sides between the upper and lower plates. The fixed springs are installed horizontally, with one end fixed to the upper and lower plates and the other end fixed to a fixed plate. The distance between the two fixed plates and the inner side of their corresponding slide rails is less than the distance between the upper or lower plates and the inner side of their corresponding slide rails.
[0016] The upper and lower clamping plates are combined and locked onto the inner wall of the track. The upper and lower clamping plates are secured by a fixing spring and a fixing plate between them, which increases the stability between them and the inner wall of the slide rail, preventing them from falling off the slide rail during rotation and adjustment.
[0017] Furthermore, the fire detector is installed on the bottom of the lower plate using bolts or double-sided adhesive.
[0018] Furthermore, the rotating assembly includes a connecting seat and a slide rail, with both ends of the connecting seat fixed to the transmission half gears on both sides respectively; the slide rail is fixed to the bottom of the connecting seat.
[0019] Furthermore, the bidirectional motor is equipped with two shafts, which can rotate simultaneously and drive the corresponding transmission gears to rotate; a reduction motor is installed at each end of the bidirectional motor to slowly drive the rotating components to move, so that the monitoring of the fire-fighting area can be changed.
[0020] Furthermore, a base frame is installed at the bottom of the mounting bracket, and a protective top plate and mounting side plates are installed inside the base frame.
[0021] Furthermore, the device also includes a fire alarm, which is electrically connected to the fire detector, allowing the fire alarm to receive electrical signals from the detector and thus issue an alarm to enable timely emergency measures. This achieves alarm functionality when an anomaly is detected.
[0022] Furthermore, a mounting rod is fixedly installed between the two mounting side plates, and the fire alarm is fixed to the mounting rod.
[0023] Compared with existing technologies, the environmental monitoring device based on artificial intelligence of things (AIIoT) of this invention has the following advantages:
[0024] This device adjusts the position of the rotating component by setting the mounting bracket in a designated location and using a rotation drive mechanism under the protective top plate to rotate it. This allows the smoke detectors and temperature detectors installed inside the slide rail to move. Multiple fire detectors can be installed inside the mounting rail as needed, and the fire scene can be monitored in real time and detected by an internet surveillance camera installed on the outside of the mounting rail. This achieves the effect of adjusting the monitoring direction and installing multiple monitoring devices. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of the environmental monitoring device based on artificial intelligence of things (AIIoT) provided in this embodiment of the present invention.
[0026] Figure 2 This is a bottom view of the environmental monitoring device based on artificial intelligence of things (AIIoT) provided in this embodiment of the present invention.
[0027] Figure 3 This is a structural diagram of the protective top plate and mounting side plate provided in an embodiment of the present utility model;
[0028] Figure 4 This is a structural diagram of the rotating component provided in an embodiment of the present invention;
[0029] Figure 5This is a side view of the sliding plate provided in an embodiment of the present invention.
[0030] In the diagram: 1. Mounting bracket; 2. Base frame; 3. Mounting side plate; 4. Protective top plate; 5. Rotating assembly; 6. Fire alarm; 7. Mounting rod; 8. Internet surveillance camera; 9. Smoke detector; 10. Temperature detector; 11. Rotation drive mechanism; 111. Transmission half gear; 112. Transmission gear; 113. Bidirectional motor; 12. Slide rail; 13. Sliding plate; 131. Upper plate; 132. Lower plate; 14. Fixing spring; 15. Fixing plate. Detailed Implementation
[0031] The present invention will be further described below with reference to specific embodiments.
[0032] This utility model embodiment provides an environmental monitoring device based on artificial intelligence of things (AI) and the Internet of Things (IoT), such as... Figure 1 and 2 As shown, it includes a mounting bracket 1, a rotating assembly 5 fixed to the bottom of the mounting bracket 1, an internet monitoring camera 8, and a fire detector mounted on the rotating assembly 5. In this embodiment, the fire detector includes a smoke detector 9 and a temperature detector 10, and multiple fire detectors can be selected and installed according to actual needs; the rotating assembly 5 is connected to a rotating drive mechanism 11.
[0033] The bottom of the mounting bracket 1 is equipped with a base frame 2, and a protective top plate 4 and mounting side plates 3 are installed inside the base frame 2, in conjunction with the attached... Figure 3 As shown, two mounting side plates 3 are vertically fixed on both sides of the bottom of the protective top plate 4. The protective top plate 4 and the mounting side plates 3 serve to protect the rotating drive mechanism 11 installed below it.
[0034] The rotation drive mechanism 11 includes a transmission half gear 111, a transmission gear 112 meshing with the transmission half gear 111, and a bidirectional motor 113. The bidirectional motor 113 is fixedly installed at the bottom of the protective top plate 4, and its two drive shafts are respectively connected to the two transmission gears 112. The two transmission gears 112 are rotatably mounted on the inner sides of the two mounting side plates 3 through bearings. The two transmission half gears 111 mesh with the two transmission gears 112 respectively. One half of the transmission half gear 111 is a toothed arc surface and the other half is a circular arc surface. One end of the toothed arc surface meshes with the transmission gear 112 and is rotatably fixed to the inner side of the two mounting side plates 3 through bearings. The other end of the circular arc surface is fixed to the rotating assembly 5.
[0035] The bidirectional motor 113 is equipped with two shafts, which can rotate simultaneously and drive the corresponding transmission gears 112 to rotate. Gear reducers are installed at both ends of the bidirectional motor 113 to slowly move the rotating assembly 5, allowing for the replacement of monitoring equipment in the fire-fighting area.
[0036] The rotating assembly 5 is located below the bidirectional motor 113 and includes a connecting seat and a slide rail 12. The two ends of the connecting seat are fixed to the transmission half gears 111 on both sides respectively. The slide rail 12 is fixed to the bottom of the connecting seat and arranged along the length of the bidirectional motor 113. The fire detector is installed on the rotating assembly through a slide seat that cooperates with the slide rail 12.
[0037] like Figure 4 As shown, the smoke detector 9 and the temperature detector 10 are respectively mounted on the slide rail 12 via sliding bases. The sliding base is a sliding plate 13, including an upper plate 131 and a lower plate 132, with both the smoke detector 9 and the temperature detector 10 fixed to the bottom of the lower plate 132; the slide rail 12 is a double-groove slide rail that cooperates with the sliding plate 13.
[0038] like Figure 5 As shown, fixing springs 14 are fixedly installed on both sides between the upper plate 131 and the lower plate 132. The fixing springs 14 are installed horizontally, with one end fixed to the upper plate 131 and the lower plate 132, and the other end is installed with a fixing plate 15. The distance between the fixing plates 15 at both ends and the inner side of their corresponding slide rails is less than the distance between the upper plate 131 or the lower plate 132 and the inner side of their corresponding slide rails.
[0039] The upper clamping plate 131 and the lower clamping plate 132 are combined and clamped to the inner wall of the track 12. The upper clamping plate 131 and the lower clamping plate 132 are connected by the fixing spring 14 and the fixing plate 15 between them, which increases the stability between them and the inner wall of the slide rail 12, so that they will not fall off the slide rail 12 during rotation adjustment.
[0040] The smoke detector 9 and the temperature detector 10 can be fixedly installed on the bottom of the lower plate 132 by bolts or double-sided adhesive.
[0041] The device also includes a fire alarm 6, with a mounting rod 7 fixedly installed between the two mounting side plates 3, and the fire alarm 6 fixed to the mounting rod 7. The fire alarm 6 is electrically connected to the smoke detector 9 and the temperature detector 10, enabling the fire alarm 6 to receive electrical signals from the detectors, thereby issuing an alarm and taking timely emergency measures. It achieves alarm activation when abnormalities are detected.
[0042] The working principle of this device is as follows:
[0043] Mounting bracket 1 is installed at the fire alarm location. The rotation drive mechanism 11 under the protective top plate 4 is used to adjust the position of the rotating component 5. One end of the arc-shaped surface of its transmission half-gear 111 is fixedly connected to the rotating component 5. The bidirectional motor 113 has two shafts, which can rotate simultaneously and drive the corresponding transmission gear 112 to rotate. The rotation of the transmission gear 112 drives the transmission half-gear 111 to rotate, thus allowing the rotating component 5 to move along an arc-shaped path, facilitating the change of monitoring position. An internet monitoring camera 8 installed on the outside of the slide rail 12 can monitor and detect the fire scene in real time.
[0044] Multiple fire detectors can be installed inside the slide rail 12 as needed. In this embodiment, the smoke detector 9 and the temperature detector 10 are respectively installed inside the slide rail 12 via sliding plates 13. The upper plate 131 and the lower plate 132 are connected by a fixing spring 14 and a fixing plate 15, which increases the stability between them and the inner wall of the slide rail 12, preventing them from falling off the slide rail 12 during rotation and adjustment. An internet monitoring camera 8 installed on the outside of the slide rail 12 can monitor and detect the fire scene in real time. The fire alarm 6 establishes a signal connection with the detectors, receives electrical signals from the detectors, and can then issue an alarm and take timely emergency measures.
[0045] Through the above specific embodiments, those skilled in the art can easily implement this utility model. However, it should be understood that this utility model is not limited to the specific embodiments described above. Based on the disclosed embodiments, those skilled in the art can arbitrarily combine different technical features to achieve different technical solutions.
[0046] Except for the technical features described in the specification, all other technologies are known to those skilled in the art.
Claims
1. An environment monitoring device based on artificial intelligence Internet of Things, characterized in that, It includes a mounting bracket, a rotating assembly fixed to the bottom of the mounting bracket, a fire detector mounted on the rotating assembly, and an internet surveillance camera, wherein the rotating assembly is connected to a rotating drive mechanism; The bottom of the mounting bracket is equipped with a protective top plate and mounting side plates. The two mounting side plates are vertically fixed on both sides of the bottom of the protective top plate. The rotation drive mechanism includes a transmission half gear, a transmission gear meshing with the transmission half gear, and a bidirectional motor. The bidirectional motor is fixedly installed at the bottom of the protective top plate, and its two drive shafts are respectively connected to two transmission gears. The two transmission gears are rotatably installed on the inner sides of two mounting side plates. One half of the transmission half gear is a toothed arc surface, and the other half is a circular arc surface. One end of the toothed arc surface meshes with the transmission gear and is rotatably fixed on the inner sides of the two mounting side plates, while the other end of the circular arc surface is fixed to the rotation assembly. The bottom of the rotating assembly is provided with a slide rail, and the fire detector is mounted on the rotating assembly via a slide block.
2. The environment monitoring device based on artificial intelligence Internet of Things according to claim 1, characterized in that, The fire detectors include smoke detectors and temperature detectors, which are respectively mounted on slide rails via sliding blocks. 3.The environmental monitoring device based on artificial intelligence Internet of Things according to claim 1 or 2, characterized in that, The rotating assembly is located below the bidirectional motor, and the slide rail is arranged along the length of the bidirectional motor. The internet surveillance cameras are installed on both sides of the slide rail. 4.The environmental monitoring device based on artificial intelligence Internet of Things according to claim 1 or 2, characterized in that, The slide block is a sliding plate, including an upper plate and a lower plate, with the fire detector fixed to the bottom of the lower plate; the slide rail is a double-groove slide rail that cooperates with the sliding plate. Fixed springs are fixedly installed on both sides between the upper and lower plates. The fixed springs are installed horizontally, with one end fixed to the upper and lower plates and the other end fixed to a fixed plate. The distance between the two fixed plates and the inner side of their corresponding slide rails is less than the distance between the upper or lower plates and the inner side of their corresponding slide rails.
5. The environment monitoring device based on artificial intelligence Internet of Things according to claim 4, characterized in that, The fire detector is installed on the bottom of the lower plate using bolts or double-sided adhesive. 6.The environmental monitoring device based on artificial intelligence Internet of Things according to claim 1, wherein, The rotating assembly includes a connecting seat and a slide rail. The two ends of the connecting seat are fixed to the transmission half gears on both sides, respectively; the slide rail is fixed to the bottom of the connecting seat.
7. An environmental monitoring device based on artificial intelligence of things (AIIoT) according to claim 1, characterized in that, The bidirectional motor is equipped with two shafts, which can rotate simultaneously and drive the corresponding transmission gears to rotate; a reduction motor is installed at each end of the bidirectional motor.
8. An environmental monitoring device based on artificial intelligence of things (AIIoT) according to claim 1, characterized in that, The mounting bracket has a base frame installed at its bottom, and the protective top plate and mounting side plate are installed inside the base frame. 9.The environmental monitoring device based on artificial intelligence Internet of Things according to claim 1, wherein, It also includes a fire alarm, which is electrically connected to the fire detector. 10.The environmental monitoring device based on artificial intelligence Internet of Things according to claim 9, wherein, A mounting rod is fixedly installed between the two mounting side plates, and the fire alarm is fixed to the mounting rod.